Formal requirements modeling for cyber-physical systems engineering: an integrated solution based on FORM-L and Modelica

Формальное моделирование требований при разработке киберфизических систем: интегрированное решение на основе FORM-L и Modelica
Daniel Bouskela, Alberto Falcone, Alfredo Garro, Audrey Jardin, Martin Otter, Nguyen Ba Thuy, Andrea Tundis
2021-08-14

FORM-LModelicaautomated requirements verificationcyber-physical systemsformal requirements modeling
Abstract The increasing complexity of cyber-physical systems (CPSs) makes their design, development and operation extremely challenging. Due to the nature of CPS that involves many heterogeneous components, which are often designed and developed by organizations belonging to different engineering domains, it is difficult to manage, trace and verify their properties, requirements and constraints throughout their lifecycle by using classical techniques. In this context, the paper presents an integrated solution to formally define system requirements and automate their verification through simulation. The solution is based on the FOrmal Requirements Modeling Language and the Modelica language. The solution is exemplified through two case studies concerning a Trailing-Edge High-Lift system and a Heating, Ventilation and Air Conditioning system.
1
The approach addresses challenges in managing, tracing, and verifying properties, requirements, and constraints across heterogeneous CPS components and engineering domains.
2
The paper presents an integrated solution combining FORM-L and Modelica to formally specify CPS requirements and automate their verification through simulation.
3
The solution is demonstrated through two case studies: a Trailing-Edge High-Lift system and a Heating, Ventilation and Air Conditioning system.
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The work targets lifecycle-wide requirements engineering for complex cyber-physical systems, where classical techniques are difficult to apply effectively.

cyber-physical systems (CPSs), exemplified by a Trailing-Edge High-Lift system and a Heating, Ventilation and Air Conditioning system

formal definition, lifecycle traceability, and simulation-based automated verification of system requirements, properties, and constraints

Publication Details
Publication Date
2021-08-14
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Authors
Daniel Bouskela
Alberto Falcone
Alfredo Garro
Audrey Jardin
Martin Otter
Nguyen Ba Thuy
Andrea Tundis
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